N-body simulations of stars escaping from the Orion nebula
arXiv:astro-ph/0401451 · doi:10.1111/j.1365-2966.2004.07673.x
Abstract
We study the dynamical interaction in which the two single runaway stars AE Aurigae and mu Columbae and the binary iota Orionis acquired their unusually high space velocity. The two single runaways move in almost opposite directions with a velocity greater than 100 km/s away from the Trapezium cluster. The star iota Ori is an eccentric (e=0.8) binary moving with a velocity of about 10 km/s at almost right angles with respect to the two single stars. The kinematic properties of the system suggest that a strong dynamical encounter occurred in the Trapezium cluster about 2.5 Myr ago. Curiously enough, the two binary components have similar spectral type but very different masses, indicating that their ages must be quite different. This observation leads to the hypothesis that an exchange interaction occurred in which an older star was swapped into the original iota Orionis binary. We test this hypothesis by a combination of numerical and theoretical techniques, using N-body simulations to constrain the dynamical encounter, binary evolution calculations to constrain the high orbital eccentricity of iota Orionis and stellar evolution calculations to constrain the age discrepancy of the two binary components. We find that an encounter between two low eccentricity (0.4<e<0.6) binaries with comparable binding energy, leading to an exchange and the ionization of the wider binary, provides a reasonable solution to this problem.
14 pages, 13 figures, 5 tables, accepted for publication in MNRAS
Cited by in corpus (64)
- Toward Understanding Massive Star Formation
- The High Angular Resolution Multiplicity of Massive Stars
- A spectroscopic survey on the multiplicity of high-mass stars
- Stellar Collisions During Binary-Binary and Binary-Single Star Interactions
- The Gould's Belt Distances Survey (GOBELINS) II. Distances and structure towards the Orion Molecular Clouds
- The Variation of Integrated Star IMFs among Galaxies
- The properties of dynamically ejected runaway and hyper-runaway stars
- Kinematic Structure of the Orion Nebula Cluster and its Surroundings
- Dynamical ejections of massive stars from young star clusters under diverse initial conditions
- The evolution of stellar triples: The most common evolutionary pathways
- The primordial binary population II: Recovering the binary population for intermediate mass stars in Sco OB2
- The Bolocam Galactic Plane Survey IV: 1.1 and 0.35 mm Dust Continuum Emission in the Galactic Center Region
- Hypervelocity Stars. I. The Spectroscopic Survey
- Explosive Outflows Powered by the Decay of Non-Hierarchical Multiple Systems of Massive Stars: Orion BN/KL
- A highly abnormal massive star mass function in the Orion Nebula cluster and the dynamical decay of trapezia systems
- Three-body encounters in the Galactic centre: the origin of the hypervelocity star SDSS J090745.0+024507
- Dependency of dynamical ejections of O stars on the masses of very young star clusters
- SPIRITS: Uncovering Unusual Infrared Transients With Spitzer
- The ALMA View of the OMC1 Explosion in Orion
- The Multiplicity of Massive Stars: A High Angular Resolution Survey with the HST Fine Guidance Sensor
- Runaway and hypervelocity stars in the Galactic halo: Binary rejuvenation and triple disruption
- Hypervelocity Stars II. The Bound Population
- Adaptive Optics Photometry and Astrometry of Binary Stars. III. A Faint Companion Search of O-Star Systems
- Very massive runaway stars from three-body encounters
- Heated Disc Stars in the Stellar Halo
- Evidence for feedback and stellar-dynamically regulated bursty star cluster formation: the case of the Orion Nebula Cluster
- Complete ejection of OB stars from very young star clusters and the formation of multiple populations
- The Orion Fingers: Near-IR Adaptive Optics Imaging of an Explosive Protostellar Outflow
- BANANA IV: Two aligned stellar rotation axes in the young eccentric binary system EP Crucis: primordial orientation and tidal alignment
- Stellar Escape from Globular Clusters. I. Escape Mechanisms and Properties at Ejection
- Wolf-Rayet and O Star Runaway Populations from Supernovae
- Magnetic field measurements and wind-line variability of OB-type stars
- Physical Conditoins in Orion's Veil II: A Multi-Component Study of the Line of Sight Toward the Trapezium
- Population synthesis in astrophysics
- A Spectroscopic Study of Field and Runaway OB Stars
- The formation of higher-order hierarchical systems in star clusters
- Star Cluster Ecology: VII The evolution of young dense star clusters containing primordial binaries
- AE Aurigae: first detection of non-thermal X-ray emission from a bow shock produced by a runaway star
- Hunting for Runaways from the Orion Nebula Cluster
- Gravitational Slingshot of Young Massive Stars in Orion
- Models for Sixty Double-Lined Binaries containing Giants
- High-velocity stars in the cores of globular clusters: The illustrative case of NGC 2808
- Bow shocks, bow waves, and dust waves. I. Strong coupling limit
- Discovery of hot supergiant stars near the Galactic center
- BD+43 3654 -- a blue straggler?
- The early evolution of young massive clusters: The kinematic history of NGC6611 / M16
- A Triple Origin for Twin Blue Stragglers in Close Binaries
- A 3D View of Orion: I. Barnard's Loop
- TYC 3159-6-1: a runaway blue supergiant
- The origin of early-type runaway stars from open clusters
- An analytic method for identifying dynamically-formed runaway stars
- Second generation star formation in globular clusters of different masses
- Two O2 If*/WN6 stars possibly ejected from the massive young Galactic cluster Westerlund 2
- How does a low-mass cut-off in the stellar IMF affect the evolution of young star clusters?
- Formation of runaway stars in a star-cluster potential
- Characterizing the stellar population of NGC 1980
- On the Formation of Runaway Stars BN and x in the Orion Nebula Cluster
- Runaway Massive Binaries and Cluster Ejection Scenarios
- The Formation of Binary Star Clusters in the Milky Way and Large Magellanic Cloud
- Kinematics of the Orion Trapezium Based on Diffracto-Astrometry and Historical Data
- Accurate fundamental parameters and distance to a massive early-type eclipsing binary in the Danks 2 cluster
- A systematic method to identify runaways from star clusters produced from single-binary interactions: A case study of M67
- Spectroscopic Line Modeling of the Fastest Rotating O-type Stars
- A hypervelocity star from the Large Magellanic Cloud